EPF6024AFC256-2
- Mfr.Part #
- EPF6024AFC256-2
- Manufacturer
- Altera (Intel)
- Package / Case
- 256-BGA
- Datasheet
- Download
- Description
- IC FPGA 219 I/O 256FBGA
- Stock
- 23,472
- In Stock :
- 23,472
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- Manufacturer :
- Altera (Intel)
- Product Category :
- FPGAs (Field Programmable Gate Array)
- Terminal Pitch :
- 1mm
- Number of Dedicated Inputs :
- 4
- Reach Compliance Code :
- Compliant
- Series :
- FLEX 6000
- Peak Reflow Temperature (Cel) :
- 220
- Length :
- 17mm
- HTS Code :
- 8542.39.00.01
- Terminal Finish :
- Tin/Lead (Sn/Pb)
- Width :
- 17mm
- Voltage - Supply :
- 3V~3.6V
- Surface Mount :
- yes
- Time@Peak Reflow Temperature-Max (s) :
- 30
- Terminal Position :
- BOTTOM
- Terminal Form :
- Ball
- Output Function :
- MACROCELL
- Number of I/O :
- 219
- Mounting Type :
- Surface Mount
- JESD-30 Code :
- S-PBGA-B256
- RoHS Status :
- Non-RoHS Compliant
- Clock Frequency :
- 153MHz
- Packaging :
- Tray
- Number of Gates :
- 24000
- Height Seated (Max) :
- 2.1mm
- Power Supplies :
- 2.5/3.33.3V
- Number of Inputs :
- 219
- Number of Logic Elements/Cells :
- 1960
- Number of Terminations :
- 256
- Supply Voltage :
- 3.3V
- Base Part Number :
- EPF6024
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- JESD-609 Code :
- e0
- Qualification Status :
- Not Qualified
- Programmable Logic Type :
- LOADABLE PLD
- Number of Outputs :
- 219
- Operating Temperature :
- 0°C~85°C TJ
- Package / Case :
- 256-BGA
- ECCN Code :
- 3A991
- Number of LABs/CLBs :
- 196
- Datasheets
- EPF6024AFC256-2

FPGAs (Field Programmable Gate Array) Altera (Intel) EPF6024AFC256-2 Overview
Introducing the EPF6024AFC256-2 by Altera (Intel), a leading-edge FPGA that stands out in the complex world of programmable logic solutions. This highly versatile integrated circuit is designed to meet the rigorous demands of today’s fast-paced technology sectors, offering a robust blend of performance and flexibility. With its compact 256FBGA package, the EPF6024AFC256-2 provides a high density of I/O options, making it an ideal choice for applications requiring a mix of high-speed interfacing and adaptive logic configurations. The utilization of this FPGA in your systems signifies a step forward in achieving higher throughput, enhanced reliability, and greater product scalability. Incorporating the FPGAs (Field Programmable Gate Array) Altera (Intel) EPF6024AFC256-2 in your hardware architecture ensures that you are equipped with the latest in programmable logic technology.
EPF6024AFC256-2 Features
The EPF6024AFC256-2 FPGA is equipped with numerous features that make it a powerful choice for developers and engineers. Key features include a vast array of 219 I/O pins which provide extensive connectivity options, housed in a compact 256-ball fine-pitch ball grid array (FBGA) package that ensures a minimal footprint on system boards. This device supports a variety of logic density options, facilitating flexible design adjustments in mid-development, thereby reducing time-to-market for complex electronic products. Its programmable logic capabilities allow for rapid prototyping and iterative testing, which is crucial in today’s fast-paced development environments.
EPF6024AFC256-2 Applications
- Telecommunications Infrastructure: Utilizes its high I/O count and flexible logic configuration to manage signal processing tasks, improving bandwidth and reducing latency in network systems.
- Automotive Electronics: Supports advanced driver-assistance systems (ADAS) by processing inputs from multiple sensors to provide real-time response and decision-making support.
- Industrial Automation: Enhances control systems with its ability to handle complex logic algorithms, thus optimizing manufacturing processes and increasing productivity.
- Consumer Electronics: Powers smart home devices and entertainment systems by enabling high-speed data processing and connectivity, ensuring seamless user experiences.
- Medical Devices: Meets stringent reliability and precision requirements for medical imaging and diagnostic equipment, facilitating advanced healthcare solutions.
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